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Realize the Image Motion Self-Registration Based on TDI in Digital Domain

机译:在数字领域实现基​​于TDI的图像运动自注册

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摘要

A novel image motion self-registration algorithm was proposed and realized to improve the effectiveness of Time-Delay-Integration image processing. First, to overcome the defects of the on-chip accumulator, a CMOS camera with off-chip digital accumulator was designed. Compared to the traditional on-chip Time-Delay-Integration, the new off-chip digital Time-Delay-Integration cost none silicon area and can integrate signal processing easily. The novel algorithm was developed to work with this new off-chip digital Time-Delay-Integration. To assess the proposed algorithm, simulations and experiments were carried out. With the new algorithm, the cross-correlation similarity of the Time-Delay-Integration images improved from 0.9257 to 0.9587, even when the image motion mismatch rate is 0.1. Further experiments proved the effectiveness of the proposed algorithm when the image motion mismatch is existing. This algorithm is suitable for applications in remote sensing systems with characters of low-illumination and high scanning speed.
机译:提出并实现了一种新的图像运动自配准算法,以提高时延积分图像处理的有效性。首先,为了克服片上累加器的缺陷,设计了带有片外数字累加器的CMOS相机。与传统的片上延时集成相比,新的片外数字延时集成不占用硅片面积,并且可以轻松集成信号处理。开发了新颖的算法以与这种新的片外数字时延集成配合使用。为了评估提出的算法,进行了仿真和实验。使用新算法,即使图像运动失配率为0.1,时间延迟积分图像的互相关相似度也从0.9257改善到0.9587。进一步的实验证明了当图像运动不匹配时该算法的有效性。该算法适用于低照度,高扫描速度的遥感系统。

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